Gases move in and out of tissues through diffusion, which is the passive movement of molecules from an area of higher concentration to an area of lower concentration. In the respiratory system, oxygen moves from the alveoli in the lungs into the bloodstream, while carbon dioxide moves from the bloodstream into the alveoli to be exhaled.
Anoxia
tissues tissues
Gases are exchanged in a plant primarily through tiny openings called stomata, which are located on the surfaces of leaves. During photosynthesis, carbon dioxide enters the plant through these stomata, while oxygen, a byproduct of the process, exits. Additionally, gases can also move through the plant's tissues via diffusion. This exchange is crucial for the plant's growth and energy production.
In the chromosphere, gases move due to convection, which involves the rising of hot gases and sinking of cooler gases. These movements are driven by the transfer of energy from the Sun's interior. Additionally, magnetic fields in the chromosphere can also influence the movement of gases, leading to phenomena such as solar flares and prominences.
This procedure is called as cryosurgery. Gases in liquid state are used to for this purpose. Gases become liquid at extremely low temperature. Say about minus 180 degree Celsius in case of Oxygen. They kill the tissue by chilling it.
Tissues
enzym and amylase
The gases only move fast when they are warm, and they are followed by liquid to make them move fast. They move the slowest when they are followed by solids, and when they are cool.
Yes. Gases move fastest, followed by liquid, while solids are the slowest.
There are muscles attached to the eye that move them.
Anoxia
muscle tissue
because blood meet gases
tissues tissues
The observation about gases that proved molecules can move is their compressibility. This is further corroborated by the Brownian Motion theory.
To help move the body. they heip bones move
extraocular muscules.